Laser-Based Far-Field Wireless Power Transfer for UAV Recharging: Architecture and Experimental Validation of the Pointing, Sensing, and Control System

Беспроводная передача энергии в дальней зоне на основе лазера для подзарядки БПЛА: архитектура и экспериментальная валидация системы наведения, обнаружения и управления
Stefano Mauro, Domenico Edoardo Sfasciamuro, Marco Lecce, Federico Zambelli
2026-07-24

RTK positioningUAV recharginghierarchical beam pointinglaser-based wireless power transferoptical feedback control
The rapid expansion of unmanned aerial vehicles (UAVs) applications in logistics, surveillance, and defense highlights the need for scalable and reliable energy delivery solutions. Conventional charging approaches constrain operational endurance and scalability, requiring frequent returns to base. This paper presents a laser-based wireless power transmission system designed to enable safe, contactless and efficient power transfer from ground to air. The main innovation of the work lies in the integration of an end-to-end architecture combining a high-power optical source, a hierarchical beam pointing framework with coarse and fine steering stages, and a receiver composed of sensing and energy conversion module mounted onboard the UAV. A further contribution is the adoption of a hybrid control strategy in which the reference position, obtained via RTK positioning, facilitates the coarse acquisition of the beam, whilst optical feedback from the receiver side enables precise alignment corrections. An experimental campaign is conducted to validate the main system functions under representative operating conditions. Beam propagation, pointing accuracy, and control response are characterized through laboratory and outdoor tests, including long-range spot measurements and closed-loop steering validation. The results demonstrate the technical feasibility of laser-based wireless energy transfer for UAV applications and provide an experimentally grounded framework for the development of persistent aerial operations in civil and defense scenarios.
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A hybrid control strategy uses RTK positioning for coarse beam acquisition and receiver-side optical feedback for precise alignment corrections.
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Experimental results demonstrate the technical feasibility of laser-based wireless recharging as a basis for persistent UAV operations.
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Laboratory and outdoor experiments characterize beam propagation, pointing accuracy, long-range spot formation, and closed-loop steering response.
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The paper presents an end-to-end laser-based wireless power transfer architecture for safe, contactless ground-to-UAV energy delivery.
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The system integrates a high-power optical source, hierarchical coarse and fine beam steering, and an onboard sensing and energy-conversion receiver.

Laser-based far-field wireless power transfer system for recharging UAVs

System architecture and experimentally validated beam propagation, pointing accuracy, sensing, energy conversion, and hybrid closed-loop control for safe, efficient ground-to-air power transfer

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2026-07-24
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Stefano Mauro
Domenico Edoardo Sfasciamuro
Marco Lecce
Federico Zambelli
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